Controlling self-assembly processes is of great interest in various fields where multifunctional and tunable materials are designed. We here present the versatility of lanthanide-complex-based micelles (Ln-C3Ms) with tunable coordination structures and corresponding functions (e.g. luminescence and magnetic relaxation enhancement). Micelles are prepared by charge-driven self-assembly of a polycationic-neutral diblock copolymer and anionic coordination complexes formed by Ln(III) ions and the bis-ligand L2EO4, which contains two dipicolinic acid (DPA) ligand groups (L) connected by a tetra-ethylene oxide spacer (EO4). By varying the DPA/Ln ratio, micelles are obtained with similar size but with different stability, different aggregation numb...
International audienceA ditopic chelating ligand (H(6)4) that bears catechol and diethylenetriamine-...
International audienceThe tetra-substituted heptadentate cyclen (1,4,7,10-tetraazacyclododecane) bas...
The inclusion of lanthanide (III) (Ln[sup]3+) ions into polymers by “covalent” bonding has applicati...
Controlling self-assembly processes is of great interest in various fields where multifunctional and...
Lanthanide-incorporated polymer micelles have been prepared driven by the lanthanide-dipicolinic aci...
Lanthanide-incorporated polymer micelles have been prepared driven by the lanthanide-dipicolinic aci...
This article presents a facile strategy to combine Eu3+ and Gd3+ ions into coacervate core micelles ...
Polyelectrolyte complex based micelles have attracted significant attention due to their potential r...
DTPA-bisamide derivatives with alkyl chains containing 14, 16 and 18 carbon atoms were synthesized a...
In situ characterization of the structure of reversible coordination polymers remains a challenge be...
This article presents a facile strategy to combine Eu3+ and Gd3+ ions into coacervate core micelles ...
During the last few decades significant progress has been made in the area of supramolecular polymer...
The synthesis and characterization of two novel DTPA bisamide derivatives DTPA-BC12PheA and DTPA-BC1...
Lanthanides, holmium(iii), dysprosium(iii), and terbium(iii), were coordinated to an amphiphilic DOT...
Lanthanide-containing nanoparticles have attracted much attention due to their unique optical proper...
International audienceA ditopic chelating ligand (H(6)4) that bears catechol and diethylenetriamine-...
International audienceThe tetra-substituted heptadentate cyclen (1,4,7,10-tetraazacyclododecane) bas...
The inclusion of lanthanide (III) (Ln[sup]3+) ions into polymers by “covalent” bonding has applicati...
Controlling self-assembly processes is of great interest in various fields where multifunctional and...
Lanthanide-incorporated polymer micelles have been prepared driven by the lanthanide-dipicolinic aci...
Lanthanide-incorporated polymer micelles have been prepared driven by the lanthanide-dipicolinic aci...
This article presents a facile strategy to combine Eu3+ and Gd3+ ions into coacervate core micelles ...
Polyelectrolyte complex based micelles have attracted significant attention due to their potential r...
DTPA-bisamide derivatives with alkyl chains containing 14, 16 and 18 carbon atoms were synthesized a...
In situ characterization of the structure of reversible coordination polymers remains a challenge be...
This article presents a facile strategy to combine Eu3+ and Gd3+ ions into coacervate core micelles ...
During the last few decades significant progress has been made in the area of supramolecular polymer...
The synthesis and characterization of two novel DTPA bisamide derivatives DTPA-BC12PheA and DTPA-BC1...
Lanthanides, holmium(iii), dysprosium(iii), and terbium(iii), were coordinated to an amphiphilic DOT...
Lanthanide-containing nanoparticles have attracted much attention due to their unique optical proper...
International audienceA ditopic chelating ligand (H(6)4) that bears catechol and diethylenetriamine-...
International audienceThe tetra-substituted heptadentate cyclen (1,4,7,10-tetraazacyclododecane) bas...
The inclusion of lanthanide (III) (Ln[sup]3+) ions into polymers by “covalent” bonding has applicati...